A power supply device includes a first conversion module and a second conversion module. The first conversion module is adapted to convert a first alternating current into a first direct current and includes a first body, a first input portion having a first alternating current input terminal, a first output portion having a first output terminal, and a first coupling portion having a first coupling terminal. The first coupling terminal and the first output terminal are connected. The second conversion module is adapted to convert a second alternating current into a second direct current and includes a second body, a second input portion having a second alternating current input terminal, a second coupling portion having a second coupling terminal, a third coupling portion having a third coupling terminal, and a second output portion having a second output terminal. The second output terminal and the second coupling terminal are connected.
|
1. A power supply device, comprising:
a first conversion module, adapted to convert a first alternating current into a first direct current and comprising:
a first body;
a first input portion, having a first alternating current input terminal and configured to input the first alternating current;
a first output portion, having a first output terminal and configured to output the first direct current; and
a first coupling portion, having a first coupling terminal, the first coupling terminal and the first output terminal being connected to each other;
a second conversion module, adapted to convert a second alternating current into a second direct current and comprising:
a second body;
a second input portion, having a second alternating current input terminal and configured to input the second alternating current;
a second coupling portion, having a second coupling terminal;
a third coupling portion, having a third coupling terminal, the third coupling terminal and the second alternating current input terminal being electrically connected to each other; and
a second output portion, having a second output terminal and configured to output the second direct current, wherein the second output terminal and the second coupling terminal are connected to each other,
wherein the first conversion module and the second conversion module are adapted to be separated from each other or combined together, when the first conversion module and the second conversion module are separated from each other, the first conversion module and the second conversion module are able to individually perform power conversion, and when the first conversion module and the second conversion module are combined together, the first conversion module and the second conversion module constitute a third conversion module adapted to convert a third alternating current into a third direct current.
2. The power supply device as recited in
3. The power supply device as recited in
4. The power supply device as recited in
5. The power supply device as recited in
6. The power supply device as recited in
7. The power supply device as recited in
8. The power supply device as recited in
9. The power supply device as recited in
10. The power supply device as recited in
11. The power supply device as recited in
12. The power supply device as recited in
13. The power supply device as recited in
|
This application claims the priority benefit of Taiwan application serial no. 107142682, filed on Nov. 29, 2018. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
The disclosure relates to a power supply device; more particularly, the disclosure relates to a multi-functional power supply device.
Charging smart phones and tablet PCs are the most popular portable electronic products, and hence normal users carry a charger for instant charging. In order to meet the charging requirements of portable electronic products, small chargers characterized by portability have been gradually developed. However, the disadvantage of the small chargers is that the output energy is small, and the purpose of fast charging cannot be achieved. Moreover, the small chargers are not suitable for large-size notebook computers or electronic home appliances with the demand for large power. On the other hand, large chargers having large output power and aiming at fast charging are often bulky, heavy, and not portable.
Therefore, in response to different charging demands, the existing charging products are often categorized into these two types. The portable chargers that is easy to carry are made in light weight and small volume, while the large chargers with good charging performance is mainly used indoors. It is thus necessary for users to purchase these two types of chargers, which causes waste of resources.
The disclosure provides a power supply device characterized by portability and large output energy and adapted to be applied to handheld electronic products and electronic home appliances.
In an embodiment of the disclosure, a power supply device having a first conversion module and a second conversion module is provided. The first conversion module is adapted to convert a first alternating current into a first direct current and includes a first body. The first conversion module also has a first input portion which has a first alternating current input terminal and is configured to input the first alternating current. The first conversion module also has a first output portion which has a first output terminal and is configured to output the first direct current. The first conversion module also has a first coupling portion which has a first coupling terminal. The first coupling terminal and the first output terminal are connected to each other. The second conversion module is adapted to convert a second alternating current into a second direct current and includes a second body. The second conversion module also has a second input portion which has a second alternating current input terminal and is configured to input the second alternating current. The second conversion module also has a second coupling portion which has a second coupling terminal. The second conversion module also has a third coupling portion which has a third coupling terminal. The third coupling terminal and the second alternating current input terminal are electrically connected to each other. The second conversion module also has a second output portion which has a second output terminal and is configured to output the second direct current. The second output terminal and the second coupling terminal are connected to each other.
Here, the first conversion module and the second conversion module are adapted to be separated from each other or combined together. When the first conversion module and the second conversion module are separated from each other, the first conversion module and the second conversion module are able to individually perform power conversion, and when the first conversion module and the second conversion module are combined together, the first conversion module and the second conversion module constitute a third conversion module adapted to convert a third alternating current into a third direct current.
In view of the above, the power supply device provided in one or more exemplary embodiments has the first conversion module and the second conversion module. The first conversion module and the second conversion module are individual structures and can be charged separately. When the first conversion module and the second conversion module are separated from each other, the volume and the weight of the first conversion module are both reduced, so that the first conversion module can be easily carried and can be applied to portable electronic products with low power requirements. After separation, the second conversion module is still capable of performing the charging function and is adapted to be placed indoors and be applied to electronic home appliances with high power requirements. If the first conversion module and the second conversion module are combined with each other, the third conversion module is formed. Practically, the charging speed of the third conversion module is faster than the charging speed of the first conversion module and the charging speed of the second conversion module, so as to achieve fast charging.
To be specific, the power supply device provided in one or more embodiments has multiple modes of use and allows the first conversion module and the second conversion module to be separated from each other. As such, the first conversion module can be carried by the user when the user goes out, and the second conversion module can be placed indoors and can be independently operated. Besides, the first conversion module and the second conversion module can be combined to form the third conversion module capable of performing power supply and charging functions in an enhanced mode. Compared to the conventional power supply device, the power supply device provided in one or more embodiments of the disclosure can perform power supply and charging functions in the portable mode, the home-use mode, and the enhanced mode; in response to different power supply and charging requirements, the modules in the power supply device can be combined or separated. Accordingly, it is no longer necessary to buy several charges for specific use, so as to prevent waste of resources.
To make the above features and advantages provided in one or more of the embodiments of the invention more comprehensible, several embodiments accompanied with drawings are described in detail as follows.
The accompanying drawings are included to provide a further understanding of the disclosure, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the disclosure and, together with the description, serve to explain the principles described herein.
With reference to
In an embodiment of the disclosure, the power supply device 100 includes a first conversion module 110 and a second conversion module 120.
Please refer to
Please refer to
The first conversion module 110 and the second conversion module 120 are adapted to be separated from each other or be combined with each other. When the first conversion module 110 and the second conversion module 120 are separated from each other, the first conversion module 110 and the second conversion module 120 can individually perform power conversion and output the first direct current DC1 and the second direct current DC2, so as to act as two independently operated chargers. In the present embodiment, for instance, the volume and the weight of the first conversion module 110 are smaller and less than those of the second conversion module 120. This indicates that the first conversion module 110 is suitable for being carried but has low power output and is thus mainly applied for charging handheld electronic products. The second conversion module 120 is adapted to be placed indoors but has high power output and is thus mainly applied for charging or supplying power to electronic home appliances.
In other embodiments, the volume and the power output of the first conversion module 110 are substantially the same as those of the second conversion module 120, so that both the first conversion module 110 and the second conversion module 120 are adapted for charging or supplying power to portable products or electronic home appliances. Note that the volume and the power output of the first conversion module 110 and those of the second conversion module 120 are not limited in the disclosure.
Please refer to
Please refer to
In the present embodiment, the DC processing unit U is, for instance, a series output circuit (
With reference to
Please refer to
In the present embodiment, the second body 121 has a notch OS. When the first body 111 and the second body 121 are combined together, the first body 111 is securely mounted to the notch OS of the second body 121 to form an intact appearance. Besides, the first coupling portion 114, the second coupling portion 123, the first input portion 112, and the third coupling portion 124 are all hidden between the first body 111 and the second body 121.
In detail, the first body 111 has a latching structure 115, and the second body 121 has an engaging structure 126 disposed corresponding to the latching structure 115. The latching structure 115 and the engaging structure 126 are adapted to be latched to each other, so as to position the first body 111 and the second body 121 and prevent the first body 111 and the second body 121 from being separated from each other by an external force. In the present embodiment, the latching structure 115 is a hook portion, and the engaging structure 126 is a groove accommodating the hook portion. Since the shape of the hook portion corresponds to the shape of the groove, the connected hook portion and groove can be formed with a smooth appearance.
In particular, the touch switch S is disposed on the engaging structure 126, and if the latching structure 115 of the first body 111 and the engaging structure 126 of the second body 121 are combined with each other, the touch switch S can be switched off through sensing pressure, distance, or other similar detecting parameters. By contrast, if the latching structure 115 of the first body 111 and the engaging structure 126 of the second body 121 are separated from each other, the touch switch S is switched on.
With reference to
To sum up, the power supply device provided in one or more exemplary embodiments has the first conversion module and the second conversion module. The first conversion module and the second conversion module are individual structures and can be charged separately. When the first conversion module and the second conversion module are separated from each other, the volume and the weight of the first conversion module are both reduced, so that the first conversion module can be easily carried and can be applied to portable electronic products with low power requirements. After separation, the second conversion module is still capable of performing power supply and charging functions and is adapted to be placed indoors, so as to be applicable to electronic home appliances with high power requirements. If the first conversion module and the second conversion module are combined with each other, the third conversion module is formed. Practically, the electric energy of the third conversion module is greater than the electric energy of the first conversion module and the electric energy of the second conversion module, so as to charge the electronic home appliances with high power requirements or rapidly charge the portable electronic products with low power requirements.
To be specific, the power supply device provided in one or more embodiments has multiple modes of use and allows the first conversion module and the second conversion module to be separated from each other. As such, the first conversion module can be carried by the user when the user goes out, while the second conversion module can be placed indoors and can be independently operated. Besides, the first conversion module and the second conversion module can be combined to form the third conversion module capable of performing power supply and charging functions in an enhanced mode. Compared to the conventional power supply device, the power supply device provided in one or more embodiments of the disclosure can perform charging functions in the portable mode, the home-use mode, and the enhanced mode; in response to different power supply and charging requirements, the modules in the power supply device can be combined or separated. Accordingly, it is no longer necessary to buy several charges for specific use, so as to prevent waste of resources.
Although exemplary embodiments of the disclosure have been described in detail above, the disclosure is not limited to specific embodiments, and various modifications and changes may be made within the scope of the disclosure defined in the claims.
Patent | Priority | Assignee | Title |
Patent | Priority | Assignee | Title |
10615699, | Aug 31 2018 | Chicony Power Technology Co., Ltd. | Voltage converter and voltage conversion method for reducing common mode noise |
6042400, | Aug 25 1998 | ICC-NEXERGY, INC | Power supply housing with foldable blades |
7422437, | Mar 15 2007 | Powertech Industrial Co., Ltd.; POWERTECH INDUSTRIAL CO , LTD | Portable adapter |
7859133, | Nov 16 2005 | SMART POWER SOLUTIONS INC | Portable apparatus of emergency power supply and battery charger |
8142228, | Apr 19 2011 | Well Shin Technology Co., Ltd.; Dongguan Well Shin Electronic Products Co., Ltd. | Charger and adapter plug assembly |
8154875, | Oct 19 2007 | Tennrich International Corp. | Power bank with replaceable battery core |
8560014, | Jul 20 2012 | Taer Inno Co., Ltd. | Adapter for communication device protective frame having back cover mobile power source and the protective frame |
20020132651, | |||
20040127080, | |||
20040201950, | |||
20050127870, | |||
20080211310, | |||
20160209885, | |||
20160294201, | |||
20180115128, | |||
CN106992579, | |||
CN108258773, | |||
CN204089297, | |||
CN205544457, | |||
TW614595, |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Jan 17 2019 | CHOU, CHUN-FU | CHICONY POWER TECHNOLOGY CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 048115 | /0327 | |
Jan 19 2019 | Chicony Power Technology Co., Ltd. | (assignment on the face of the patent) | / |
Date | Maintenance Fee Events |
Jan 19 2019 | BIG: Entity status set to Undiscounted (note the period is included in the code). |
Feb 01 2024 | M1551: Payment of Maintenance Fee, 4th Year, Large Entity. |
Date | Maintenance Schedule |
Aug 04 2023 | 4 years fee payment window open |
Feb 04 2024 | 6 months grace period start (w surcharge) |
Aug 04 2024 | patent expiry (for year 4) |
Aug 04 2026 | 2 years to revive unintentionally abandoned end. (for year 4) |
Aug 04 2027 | 8 years fee payment window open |
Feb 04 2028 | 6 months grace period start (w surcharge) |
Aug 04 2028 | patent expiry (for year 8) |
Aug 04 2030 | 2 years to revive unintentionally abandoned end. (for year 8) |
Aug 04 2031 | 12 years fee payment window open |
Feb 04 2032 | 6 months grace period start (w surcharge) |
Aug 04 2032 | patent expiry (for year 12) |
Aug 04 2034 | 2 years to revive unintentionally abandoned end. (for year 12) |